催化作用
化学
钼
铟
纳米技术
脱氧核酶
硫化物
液相
相(物质)
金属
液态金属
组合化学
氧化还原
烟酰胺腺嘌呤二核苷酸
无定形固体
材料科学
镓
分子工程
产量(工程)
级联
多相催化
作者
Wenting Zhang,Jiawei Zhu,J. Ren J. Ren,Xiaogang Qu
标识
DOI:10.1038/s41467-026-70795-4
摘要
Liquid metals (LMs) have been used for design of advanced materials by leveraging their unique liquid and electronic properties. Here, we design a series of liquid metal-buffered amorphous molybdenum sulfide nanozymes with different gallium indium ratios, in which Ga75.5In24.5 MoSX nanozymes exhibit the enzyme-like activity, superior to the crystalline MoS2. This has been verified and assigned to the roles of liquid metal: (i) serving as the building template, (ii) phase engineering with catalytic active sites, (iii) electron-rich microenvironment for improving catalytic activity. Besides, the amorphous Ga75.5In24.5 MoSX nanozyme possesses oxidase (OXD)-like and nicotinamide adenine dinucleotide oxidase (NOX)-like activity to achieve multiple-enzyme-like cascade catalytic reactions, disrupting intratumoral redox and metabolism homeostasis. As the example of leveraging liquid metal as a well-designed platform to screen high-performance nanozyme with excellent therapeutic effects, this work highlights the roles of tailored electronic structure and phase engineering for regulation of catalytic activity of nanozymes and may also broaden the application of liquid metal in catalysis and biomedical field.
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